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用于监测的无线单电极自供电压电传感器。

Wireless Single-Electrode Self-Powered Piezoelectric Sensor for Monitoring.

作者信息

Liu Qi, Wang Xiao-Xiong, Song Wei-Zhi, Qiu Hui-Jing, Zhang Jun, Fan Zhiyong, Yu Miao, Long Yun-Ze

机构信息

Collaborative Innovation Center for Nanomaterials & Devices, College of Physics , Qingdao University , Qingdao 266071 , China.

Department of Electronic & Computer Engineering , The Hong Kong University of Science & Technology , Kowloon , 999077 Hong Kong , China.

出版信息

ACS Appl Mater Interfaces. 2020 Feb 19;12(7):8288-8295. doi: 10.1021/acsami.9b21392. Epub 2020 Feb 5.

Abstract

In complex environments, there are often toxic and harmful conditions, and so self-powered sensors that use wireless access have a huge advantage. However, there is still a risk of short circuit for self-powered sensors in harsh environments. A single-electrode self-powered sensor was designed, which can be used to monitor body movements such as walking and running, as well as monitoring the motion of some mechanical devices, such as peristaltic pumps, door, and window switches. By using a threshold delay algorithm, this self-powered sensor can be connected to the phone to warn the phone user to check for theft or illegal intrusion when the door and window are opened. Further research shows that the single-electrode configuration can avoid the short-circuit behavior caused by device damage so that the self-powered sensor can still work even if it is pierced. Therefore, the wireless single-electrode self-powered sensor system has better reliability and is more applicable to harsh environments.

摘要

在复杂环境中,往往存在有毒有害条件,因此使用无线接入的自供电传感器具有巨大优势。然而,在恶劣环境下自供电传感器仍存在短路风险。设计了一种单电极自供电传感器,它可用于监测诸如行走和跑步等身体运动,以及监测一些机械设备的运动,如蠕动泵、门窗开关等。通过使用阈值延迟算法,该自供电传感器可连接到手机,以便在门窗打开时警告手机用户检查是否有盗窃或非法入侵情况。进一步研究表明,单电极配置可避免因设备损坏导致的短路行为,从而使自供电传感器即使被刺穿仍能工作。因此,无线单电极自供电传感器系统具有更好的可靠性,更适用于恶劣环境。

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